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Effect of cabazitaxel on macrophages improves CD47-targeted immunotherapy for triple-negative breast cancer
Xu Cao1, Bolei Li1, Jing Chen1
1Department of Immuno-Oncology, Beckman Research Institute, City of Hope, Duarte, California, USA.
Background:
Limited therapeutic options are available for triple-negative breast cancer (TNBC), emphasizing an urgent need for more effective treatment approaches. The development of strategies by targeting tumor-associated macrophages (TAMs) to stimulate their ability of Programmed Cell Removal (PrCR) provides a promising new immunotherapy for TNBC treatment.
Methods:
CD47 is a critical self-protective "don't eat me" signal on multiple human cancers against macrophage immunosurveillance. Using human and mouse TNBC preclinical models, we evaluated the efficacy of PrCR-based immunotherapy by blocking CD47. We performed high-throughput screens on FDA-approved anti-cancer small molecule compounds for agents potentiating PrCR and enhancing the efficacy of CD47-targeted therapy for TNBC treatment.
Results:
We showed that CD47 was widely expressed on TNBC cells and TAMs represented the most abundant immune cell population in TNBC tumors. Blockade of CD47 enabled PrCR of TNBC cells, but the efficacy was not satisfactory. Our high-throughput screens identified cabazitaxel in enhancing PrCR-based immunotherapy. A combination of CD47 blockade and cabazitaxel treatment yielded a highly effective treatment strategy, promoting PrCR of TNBC cells and inhibiting tumor development and metastasis in preclinical models. We demonstrated that cabazitaxel potentiated PrCR by activating macrophages, independent of its cytotoxicity toward cancer cells. When treated with cabazitaxel, the molecular and phenotypic signatures of macrophages were polarized toward M1 state, and the NF-kB signaling pathway became activated.
Conclusion:
The combination of CD47 blockade and macrophage activation by cabazitaxel synergizes to vastly enhance the elimination of TNBC cells. Our results show that targeting macrophages is a promising and effective strategy for TNBC treatment.
Insights
Blocking CD47 combined with cabazitaxel enhances macrophage-mediated tumor cell removal for triple-negative breast cancer (TNBC). This combination therapy shows promise for inhibiting TNBC growth and metastasis.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Triple-negative breast cancer (TNBC) lacks effective therapies, necessitating novel treatment strategies.
- Targeting tumor-associated macrophages (TAMs) to enhance their Programmed Cell Removal (PrCR) offers a promising immunotherapy avenue for TNBC.
Purpose of the Study:
- To evaluate the efficacy of blocking CD47, a "don't eat me" signal, in TNBC.
- To identify FDA-approved compounds that enhance PrCR and CD47-targeted therapy for TNBC.
Main Methods:
- Utilized preclinical TNBC models (human and mouse) to assess CD47 blockade and PrCR.
- Conducted high-throughput screening of FDA-approved anti-cancer drugs for PrCR potentiation.
- Evaluated combination therapy of CD47 blockade with identified compounds.
Main Results:
- CD47 blockade alone showed limited efficacy in promoting TNBC cell PrCR.
- Cabazitaxel was identified as a compound that enhances PrCR by activating macrophages towards an M1-like state.
- Combination therapy of CD47 blockade and cabazitaxel significantly inhibited TNBC tumor development and metastasis.
Conclusions:
- Combining CD47 blockade with cabazitaxel-induced macrophage activation synergistically enhances TNBC cell elimination.
- Targeting macrophages represents a potent and effective therapeutic strategy for TNBC treatment.
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